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对食品烤箱进行重新设计,用于对个人防护装备进行热消毒以对抗新型冠状病毒

"Re-engineering of a food oven for thermal sanitization of Personal Protective Equipment against Sars-CoV-2 virus".

作者信息

Bottani Eleonora, Bottari Benedetta, Milanese Daniel, Montanari Roberto, Sciancalepore Corrado, Volpi Andrea, Solari Federico, Tebaldi Letizia

机构信息

Department of Engineering and Architecture, University of Parma, Parco Area delle Scienze 181/A, Parma 43124, Italy.

Department of Food and Drug, University of Parma, Parco Area delle Scienze 49/A, Parma 43124, Italy.

出版信息

Sustain Futur. 2022;4:100093. doi: 10.1016/j.sftr.2022.100093. Epub 2022 Aug 12.

Abstract

One of the main issues addressed by the recent COVID-19 pandemic which affected the whole world is the availability of Personal Protective Equipment (PPE) (e.g., face masks, white coats, or disposable gloves). This issue impacts on sustainability from different perspectives, such as more generated waste or environmental pollution, both for manufacturing and disposal, or more inequalities deriving from who can afford and access PPE and who cannot, since many shortages were recorded during the pandemic as well as fluctuating unit prices. Moreover, quite often PPE intended for single use are improperly used more times, thus generating a biological risk of infection. In an attempt to propose an innovative solution to face this problem, in this paper the re-design of an oven originally intended for food purposes is presented, with the aim of operating a thermal sanitization of PPE. The machinery and its components are detailed, together with physical and microbiological tests performed on non-woven PPE to assess the effect of treatment on mechanical properties and viral load. The pilot machinery turned out to be effective in destroying a bovine coronavirus at 95 °C and thus reducing contaminating risk in one hour without compromising the main properties of PPE, opening perspectives for the commercialization of the solution in the near future.

摘要

近期影响全球的新冠疫情所涉及的主要问题之一是个人防护装备(PPE)(如口罩、白大褂或一次性手套)的供应情况。这个问题从不同角度影响可持续性,比如制造和处置过程中产生更多废物或造成环境污染,或者因谁能负担得起并获取个人防护装备以及谁不能而产生更多不平等现象,因为疫情期间记录到许多短缺情况以及单价波动。此外,一次性使用的个人防护装备常常被不当多次使用,从而产生感染的生物风险。为了提出创新解决方案来应对这一问题,本文介绍了一种原本用于食品用途的烤箱的重新设计,目的是对个人防护装备进行热消毒。详细介绍了该机器及其部件,以及对非织造个人防护装备进行的物理和微生物测试,以评估处理对机械性能和病毒载量的影响。该试验机器在95°C下能有效杀灭牛冠状病毒,从而在一小时内降低污染风险,同时不损害个人防护装备的主要性能,为该解决方案在不久的将来实现商业化开辟了前景。

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